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202 results for “Australian endemics”
Figure 5 in A revision of the endemic Australian spittlebug genus Anyllis Kirkaldy (Hemiptera: Aphrophoridae) with descriptions of two new species
Figure 5. Anyllis tiegsi. (A) Head, pronotum and scutellum, dorsal view; (B) head, ventral view; (C) male genital capsule, lateral view; (D) male genital capsule, ventral view; (E) anal segment and basal anal processes, ventral view; (F) genital styles and base of aedeagus, ventral view; (G) aedeagus and left genital style, left view. Scale bars: A, B 0.25 mm; C–G 0.125 mm.
Figure 4 in A revision of the endemic Australian spittlebug genus Anyllis Kirkaldy (Hemiptera: Aphrophoridae) with descriptions of two new species
Figure 4. Anyllis pseudotiegsi sp. nov. (A) Head, pronotum and scutellum, dorsal view; (B) head, ventral view; (C) male genital capsule, lateral view; (D) male genital capsule, ventral view; (E) anal segment and basal anal processes, ventral view; (F) genital styles and base of aedeagus, ventral view; (G) aedeagus and left genital style, left view. Scale bars: A, B 0.25 mm; C–G 0.125 mm.
Figure 2 in A revision of the endemic Australian spittlebug genus Anyllis Kirkaldy (Hemiptera: Aphrophoridae) with descriptions of two new species
Figure 2. Anyllis gibbosus sp. nov. (A) Head, pronotum and scutellum, dorsal view; (B) head, ventral view; (C) male genital capsule, lateral view; (D) male genital capsule, ventral view; (E) anal segment and basal anal processes, ventral view; (F) genital styles and base of aedeagus, ventral view; (G) aedeagus and left genital style, left view. Scale bars: A, B 0.5 mm; C–G 0.125 mm.
Figure 3 in A revision of the endemic Australian spittlebug genus Anyllis Kirkaldy (Hemiptera: Aphrophoridae) with descriptions of two new species
Figure 3. Anyllis leiala. (A) Head, pronotum and scutellum, dorsal view; (B) head, ventral view; (C) male genital capsule, lateral view; (D) male genital capsule, ventral view; (E) anal segment and basal anal processes, ventral view; (F) genital styles and base of aedeagus, ventral view; (G) aedeagus and left genital style, left view. Scale bars: A, B 0.25 mm; C–G 0.125 mm.
Figure 1 in A revision of the endemic Australian spittlebug genus Anyllis Kirkaldy (Hemiptera: Aphrophoridae) with descriptions of two new species
Figure 1. Anyllis species, dorsal and lateral habitus. (A–D) Anyllis gibbosus sp. nov.; (A, B) male, paratype; (C, D) female, paratype, Australia: Queensland; (E, F) Anyllis leiala, male, Australia: New South Wales; (G, H) Anyllis pseudotiegsi sp. nov., male paratype, Australia: Tasmania; (I, J) Anyllis spinostylus, male paratype, Australia: Tasmania; (K, L) Anyllis tiegsi, male, Australia: New South Wales.
FIGURE 6 in Redescription of the endemic Australian cladoceran Alona willisi (Smirnov, 1989) and its assignment to Acanthalona gen. nov. (Cladocera: Anomopoda: Chydoridae)
FIGURE 6. Records of Acanthalona willisi (Smirnov, 1989) in Australia. Queensland, Timms (1986) and Smirnov (1989); Western Australia, R. Shiel and A. Pinder personal communication; New South Wales, present study. The type locality is Lake Wicheura, via Bamaga, Cape York, Queensland (10°46' S, 142°34' E) (Timms 1986, p.170).
FIGURE 5 in Redescription of the endemic Australian cladoceran Alona willisi (Smirnov, 1989) and its assignment to Acanthalona gen. nov. (Cladocera: Anomopoda: Chydoridae)
FIGURE 5. Acanthalona willisi (Smirnov, 1989) from Jibbon Lagoon, Royal National Park, New South Wales, Australia, adult parthenogenetic female. A, maxillule. B–O, thoracic limbs: B, limb I; C, IDL of limb I; D, seta d of endite 2 of limb I; E, anterior setae and sensillae of endites 1–2; F, limb II; G, exopodite of limb II; H, exopodite of limb III; I–J, inner portion of limb III; K, exopodite of limb IV; L–M, inner portion of limb IV; N, exopodite of limb V; O, inner portion of limb V. P, limb VI. Abbreviations: as = accessory seta of limb I; e1–3 = endites 1–3 of limb I; ep = epipodite; ex = exopodite; gfp = filter plates of limbs II–V; IDL = inner distal lobe of limb I; il = inner lobe of limb V; ODL = outer distal lobe of limb I; pep = preepipodite; s = sensillum. Scale bar denotes 0.05 mm.
FIGURE 3 in Redescription of the endemic Australian cladoceran Alona willisi (Smirnov, 1989) and its assignment to Acanthalona gen. nov. (Cladocera: Anomopoda: Chydoridae)
FIGURE 3. Acanthalona willisi (Smirnov, 1989) from Jibbon Lagoon, Royal National Park, New South Wales, Australia, adult parthenogenetic female. A, sculpture of valves. B, postero-ventral angle of valves. C, head. D–E, postabdomen. F, antenna. Scale bars denote 0.05 mm for A–E, 0.01 mm for F.
FIGURE 4 in Redescription of the endemic Australian cladoceran Alona willisi (Smirnov, 1989) and its assignment to Acanthalona gen. nov. (Cladocera: Anomopoda: Chydoridae)
FIGURE 4. Acanthalona willisi (Smirnov, 1989) from Jibbon Lagoon, Royal National Park, New South Wales, Australia, adult parthenogenetic female. A–B, labrum. C, postabdomen. D–E, postabdomen and marginal denticles on its opposite side. F, antennule. G, antenna. Scale bar denotes 0.05 mm.
FIGURE 2 in Redescription of the endemic Australian cladoceran Alona willisi (Smirnov, 1989) and its assignment to Acanthalona gen. nov. (Cladocera: Anomopoda: Chydoridae)
FIGURE 2. Acanthalona willisi (Smirnov, 1989) from Jibbon Lagoon, Royal National Park, New South Wales, Australia. A–B, juvenile female of instar II in lateral and dorsal view. C–I, adult parthenogenetic female. C–E, specimens in lateral view. F–G, same specimen in anterio-dorsal and lateral view. H, head shield. I, head pores. Scale bars denote 0.1 mm for A–G, 0.05 mm for I.
FIGURE 1 in Redescription of the endemic Australian cladoceran Alona willisi (Smirnov, 1989) and its assignment to Acanthalona gen. nov. (Cladocera: Anomopoda: Chydoridae)
FIGURE 1. Acanthalona willisi (Smirnov, 1989) from Jibbon Lagoon, Royal National Park, New South Wales, Australia. A–B, juvenile females of instar I and II. C–I, adult parthenogenetic female: C, habitus; D, valve; E, posterior margin of valves; F–G, head shield; H–I, head pores. Scale bars denote 0.1 mm for A–C, F–G and D, 0.05 mm for I.
FIGURE 2. Tasmosalpingus quadrispilotus Lea, 1919 in Review of the Australian endemic genus Tasmosalpingus Lea, 1919 (Coleoptera, Cucujoidea, Tasmosalpingidae)
FIGURE 2. Tasmosalpingus quadrispilotus Lea, 1919: A, head, dorsal view; B, head, ventral view; C, prothorax, ventral view; D, prothorax, lateral view, red arrow pointing to setose cavity; E, antenna; F, elytron, dorsal, red arrow pointing to setose cavity; G, pterothorax, ventral; H, hind tarsus, male; I, mandible, dorsal; J, maxilla, ventral; K, labium, ventral; L, female genitalia; M, male terminalia; N, male genitalia. Scale bars = 0.1 mm
FIGURE 1. Tasmosalpingus quadrispilotus Lea, 1919. A in Review of the Australian endemic genus Tasmosalpingus Lea, 1919 (Coleoptera, Cucujoidea, Tasmosalpingidae)
FIGURE 1. Tasmosalpingus quadrispilotus Lea, 1919. A, dorsal view; B, ventral view; C, lateral view; D, Tasmosalpingus quadrispilotus Lea, 1919, lectotype; E, Tasmosalpingus promiscuus Lea, 1919, lectotype; F–I, variation of colour pattern and punctation; F–G, Mt. Oakleigh, TAS; H–I, Saxons Road, TAS. Scale bars = 0.5 mm.
FIGURE 4 in Review of the Australian endemic genus Tasmosalpingus Lea, 1919 (Coleoptera, Cucujoidea, Tasmosalpingidae)
FIGURE 4. Tasmosalpingus magnus sp. nov., paratype: A, head, dorsal view; B, head, ventral view; C, prothorax, ventral view; D, prothorax, lateral view, red arrow pointing to setose cavity; E, antenna; F, elytron, dorsal, red arrow pointing to setose cavity; G, pterothorax, ventral; H, hind tarsus, male; I, maxilla, ventral; J, labium, ventral; K, mandible, dorsal; L, female genitalia; M, male terminalia; N, male genitalia. Scale bars: 0.1 mm for I–K, 0.2 mm for the remaining images.
FIGURE 5 in Review of the Australian endemic genus Tasmosalpingus Lea, 1919 (Coleoptera, Cucujoidea, Tasmosalpingidae)
FIGURE 5. Distributions of Tasmosalpingus quadrispilotus (A) and T. magnus (B) with Maxent (Phillips et al. 2006) models of suitable habitat for each species (using mean annual temperature, annual temperature range, mean annual precipitation and precipitation of the warmest quarter). Yellow is less suitable, and green to blue is more suitable, predicted climatic habitat.
FIGURE 3 in Review of the Australian endemic genus Tasmosalpingus Lea, 1919 (Coleoptera, Cucujoidea, Tasmosalpingidae)
FIGURE 3. Tasmosalpingus magnus sp. nov. A, holotype, male; B–D, paratype, female; A–B, dorsal view; C, ventral view; D, lateral view. Scale bars = 0.5 mm.
Data from: Lineage range estimation method reveals fine-scale endemism linked to Pleistocene stability in Australian rainforest herpetofauna
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Data from: Larger plants promote a greater diversity of symbiotic nitrogen-fixing soil bacteria associated with an Australian endemic legume
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Data from: Contrasting diversity and demographic signals in sympatric narrow range endemic shrubs of the southwest Western Australian semi-arid zone
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Figure 5 in A new species of the enigmatic Australian endemic family Trachypetidae (Hymenoptera: Ichneumonoidea): Cercobarcon lasallei sp.n.
Figure 5. Distribution map showing the collection site of the Cercobarcon lasallei sp. nov. holotype.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.